Preterm infants with isolated cerebellar hemorrhage show bilateral cortical alterations at term equivalent age

Publication date

2020-12-01

Authors

Dijkshoorn, Aicha B C
Turk, EliseORCID 0000-0002-4802-6774
Hortensius, Lisa M.
van der Aa, Niek E.ORCID 0000-0001-6011-2854ISNI 000000039517841X
Hoebeek, Freek E
Groenendaal, FlorisORCID 0000-0002-9284-1637ISNI 0000000393055993
Benders, Manon J.N.L.ISNI 0000000388026661
Dudink, JeroenISNI 0000000387693657

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

cc_by

Abstract

The cerebellum is connected to numerous regions of the contralateral side of the cerebrum. Motor and cognitive deficits following neonatal cerebellar hemorrhages (CbH) in extremely preterm neonates may be related to remote cortical alterations, following disrupted cerebello-cerebral connectivity as was previously shown within six CbH infants. In this retrospective case series study, we used MRI and advanced surface-based analyses to reconstruct gray matter (GM) changes in cortical thickness and cortical surface area in extremely preterm neonates (median age = 26; range: 24.9-26.7 gestational weeks) with large isolated unilateral CbH (N = 5 patients). Each CbH infant was matched with their own preterm infant cohort (range: 20-36 infants) based on sex and gestational age at birth. On a macro level, our data revealed that the contralateral cerebral hemisphere of CbH neonates did not show less cortical thickness or cortical surface area than their ipsilateral cerebral hemisphere at term. None of the cases differed from their matched cohort groups in average cortical thickness or average cortical surface area in the ipsilateral or contralateral cerebral hemisphere. On a micro (i.e. vertex) level, we established high variability in significant local cortical GM alteration patterns across case-cohort groups, in which the cases showed thicker or bigger volume in some regions, among which the caudal middle frontal gyrus, insula and parahippocampal gyrus, and thinner or less volume in other regions, among which the cuneus, precuneus and supratentorial gyrus. This study highlights that cerebellar injury during postnatal stages may have widespread bilateral influence on the early maturation of cerebral cortical regions, which implicate complex cerebello-cerebral interactions to be present at term birth.

Keywords

cerebellum, prematurity, General, Journal Article

Citation

Dijkshoorn, A B C, Turk, E, Hortensius, L M, van der Aa, N E, Hoebeek, F E, Groenendaal, F, Benders, M J N L & Dudink, J 2020, 'Preterm infants with isolated cerebellar hemorrhage show bilateral cortical alterations at term equivalent age', Scientific Reports, vol. 10, no. 1, 5283, pp. 5283. https://doi.org/10.1038/s41598-020-62078-9